Cleaning and cooling mechanism of latex pillow forming equipment
By designing a cleaning and cooling mechanism for latex pillow molding equipment, the automatic mold opening, cleaning, and cooling of the mold are realized, solving the problem of high manual labor intensity in traditional latex pillow production and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU JINCHEN RUBBER PLATE CO LTD
- Filing Date
- 2026-03-10
- Publication Date
- 2026-04-21
AI Technical Summary
In the traditional latex pillow production process, the opening and closing of molds requires manual operation, which is labor-intensive, and there is a lack of automated cleaning and cooling methods during the mold transportation process.
A cleaning and cooling mechanism for a latex pillow molding equipment was designed, including a conveying component, a mold opening component, a cleaning component, and a cooling component. The conveying component drives the mold to move, and the rotating air knife and cold air fan components are used to realize the automatic mold opening, cleaning, and cooling of the mold. Combined with the mold closing lever, the automatic mold closing is realized.
It has enabled automated mold opening, cleaning and cooling, reducing manual labor intensity and improving production efficiency and mold preparation speed.
Smart Images

Figure CN224145124U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to latex pillow production equipment, specifically to a cleaning and cooling mechanism for latex pillow molding equipment. Background Technology
[0002] Latex pillows are made from the sap of rubber trees and fermented with added safe materials. They are popular with consumers due to their unique properties and comfortable experience. Traditionally, latex pillow production uses fixed molds. After production, the mold needs to be opened to remove the pillow and cleaned and cooled for the next molding process. Opening and closing the mold usually requires manual labor, resulting in high worker workload. Furthermore, a new type of equipment has emerged that transports molding molds to different workstations. A key challenge is how to achieve mold opening and closing during this transport process. Utility Model Content
[0003] In view of the shortcomings of the prior art, the technical problem to be solved by this utility model is to provide a cleaning and cooling mechanism for a latex pillow molding equipment to solve the above-mentioned problems.
[0004] Therefore, this utility model is implemented using the following solution:
[0005] A cleaning and cooling mechanism for a latex pillow molding equipment is characterized by comprising: a conveying component that can drive the molding die to move; a mold opening component, a cleaning component, a cooling component, and a mold closing component are sequentially arranged along the conveying path of the conveying component; the conveying component includes a drive motor, the output end of which is connected to a sprocket; the sprocket meshes with a chain; conveying plates are arranged on the chain; slots are provided on the conveying plates; the bottom of the molding die can be inserted into the slots; the mold opening component includes a mold opening lever corresponding to the conveying component and a pressure strip that can press down the base of the lower mold of the molding die; the mold closing component includes a mold closing lever corresponding to the conveying component; and the upper mold of the molding die has an extension that cooperates with the mold opening lever and the mold closing lever.
[0006] The cleaning component includes an air knife seat disposed above the corresponding conveying component. The air knife seat has a first rotating air knife arranged horizontally and a second rotating air knife arranged vertically. The first rotating air knife is used to clean the lower mold after it is opened by blowing air, and the second rotating air knife is used to clean the upper mold after it is opened by blowing air.
[0007] The cooling assembly includes a cooling chamber enclosed by a corresponding conveying assembly. The top of the cooling chamber has a first cold air fan assembly arranged in a row, and the side of the cooling chamber has a second cold air fan assembly arranged in a row. The first cold air fan assembly is used to cool the lower mold after it is opened, and the second cold air fan assembly is used to cool the upper mold after it is opened.
[0008] The pressure strip is provided with a roller seat, and an elastic element is provided between the roller seat and the pressure strip. The roller seat is provided with a roller that can be elastically pressed against the base.
[0009] The cleaning and cooling mechanism of the latex pillow molding equipment described above uses a conveyor plate with slots to achieve clamping conveying of the molding mold, ensuring its conveying stability. It also uses pressure strips to position the lower mold when opening the mold. By setting mold opening and closing levers and cooperating with the extension of the upper mold, the upper mold is driven to swing up and down during the conveying process, thereby achieving automatic mold opening and closing operations. This facilitates the subsequent removal of the finished latex pillow and the cleaning and cooling of the mold. Attached Figure Description
[0010] The present invention includes the following figures:
[0011] Figure 1 This is a schematic diagram of the structure of this utility model;
[0012] Figure 2 for Figure 1 A magnified view of the area pointed to by A in the middle. Detailed Implementation
[0013] As shown in the figure, the cleaning and cooling mechanism of the latex pillow molding equipment disclosed in this utility model includes a conveying component 1, which can drive the molding die to move. The conveying path of the conveying component is sequentially provided with a mold opening component, a cleaning component, a cooling component, and a mold closing component. The conveying component includes a drive motor, the output end of which is connected to a sprocket. The sprocket meshes with a chain. A conveying plate 11 is arranged on the chain. A slot 10 is provided on the conveying plate 11. The bottom of the molding die can be inserted into the slot 10. The mold opening component includes a mold opening lever 6 provided corresponding to the conveying component and a pressure strip 9 that can press the base part 8 of the lower mold 7 of the molding die. The mold closing component includes a mold closing lever 3 provided corresponding to the conveying component. The upper mold 5 of the molding die has an extension part 4 that cooperates with the mold opening lever 6 and the mold closing lever 3.
[0014] Furthermore, the cleaning component includes an air knife holder 13 positioned above the corresponding conveying component. The air knife holder 13 has a first rotating air knife 12 arranged horizontally and a second rotating air knife 14 arranged vertically. The first rotating air knife 12 is used to clean the lower mold after it has been opened by blowing air, and the second rotating air knife 14 is used to clean the upper mold after it has been opened by blowing air. Using this structure, by setting the first and second rotating air knives, high-speed air blowing cleaning of the upper and lower molds can be achieved, ensuring the removal of residual latex waste from the molding die and guaranteeing the quality of the next molding process.
[0015] Furthermore, the cooling assembly includes a cooling chamber 2 enclosed by the corresponding conveying assembly. The top of the cooling chamber 2 has a first set of cooling fan assemblies arranged in an array, and the sides of the cooling chamber have a second set of cooling fan assemblies arranged in an array. The first set of cooling fan assemblies is used to cool the lower mold after it has been opened, and the second set of cooling fan assemblies is used to cool the upper mold after it has been opened. Using this structure, precise cooling of the lower and upper molds after opening can be achieved, ensuring that the mold can be cooled to the required temperature in a timely manner so that latex material can be filled again subsequently.
[0016] Furthermore, a roller seat is provided on the pressure strip 9, and an elastic element is provided between the roller seat and the pressure strip. The roller seat is provided with a roller that can be elastically pressed against the base part 8. With the above structure, the base part 8 can be elastically pressed by the roller and a rolling contact engagement with the base part 8 can be achieved, reducing the friction during pressing and ensuring that the molding die can move stably under the drive of the conveying component.
[0017] The working principle of this utility model is as follows: The molding die is placed on the conveying component 1 for conveying. When the conveying component moves the molding die to the mold opening lever 6, the mold opening lever 6 will contact and squeeze the extension 4 of the upper die 5, and drive the upper die 5 to swing upward. At the same time, the base 8 of the lower die 7 is pressed by the pressure strip 9, thereby realizing the mold opening operation. After the molding die is opened, it is sent to the cleaning component. The first and second rotating air knives blow air to clean the upper die and the lower die at high speed. After that, the molding die is sent to the cooling chamber 2 for air cooling. When the conveying component 1 moves the mold opening mold to the mold closing lever 3, the mold closing lever 3 will contact and squeeze the extension 4 of the upper die 5, thereby driving the upper die 5 to swing downward, realizing the mold closing operation.
Claims
1. A cleaning and cooling mechanism for a latex pillow forming apparatus, characterized by: The system includes a conveying assembly (1), which can drive the molding die to move. The conveying path of the conveying assembly is provided with an opening assembly, a cleaning assembly, a cooling assembly and a closing assembly in sequence. The conveying assembly includes a drive motor, the output end of which is connected to a sprocket. The sprocket meshes with a chain. A conveying plate (11) is arranged on the chain. A slot (10) is provided on the conveying plate (11). The bottom of the molding die can be inserted into the slot (10). The opening assembly includes an opening lever (6) provided with the conveying assembly and a pressure strip (9) that can press the base part (8) of the lower mold (7) of the molding die. The closing assembly includes a closing lever (3) provided with the conveying assembly. The upper mold (5) of the molding die has an extension part (4) that cooperates with the opening lever (6) and the closing lever (3).
2. The cleaning and cooling mechanism of the latex pillow forming apparatus according to claim 1, characterized in that: The cleaning component includes an air knife seat (13) disposed above the corresponding conveying component. The air knife seat (13) has a first rotating air knife (12) arranged horizontally and a second rotating air knife (14) arranged vertically. The first rotating air knife (12) is used to blow air to clean the lower mold after it is opened, and the second rotating air knife (14) is used to blow air to clean the upper mold after it is opened.
3. The cleaning and cooling mechanism of the latex pillow forming apparatus according to claim 1, characterized in that: The cooling assembly includes a cooling chamber (2) enclosed by a corresponding conveying assembly. The top of the cooling chamber (2) has a first cold air fan assembly arranged in a row, and the side of the cooling chamber has a second cold air fan assembly arranged in a row. The first cold air fan assembly is used to cool the lower mold after it is opened, and the second cold air fan assembly is used to cool the upper mold after it is opened.
4. The cleaning and cooling mechanism of the latex pillow forming apparatus according to claim 1, characterized by: The pressure strip (9) is provided with a roller seat, and an elastic element is provided between the roller seat and the pressure strip. The roller seat is provided with a roller that can be elastically pressed onto the base part (8).